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Laser Processing Mechanism of Monocrystalline Diamond
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作者 Etsuji Ohmura Katsuko Harano +1 位作者 Kenichi Watatani Keiji Ebata 《Journal of Mechanics Engineering and Automation》 2011年第3期191-199,共9页
When a Nd:YAG laser, the wavelength of which is permeable for diamond, is focused on the surface of a diamond sample, a layer of surface material is ablated. Therefore, diamond can be cut by repetitive irradiation. I... When a Nd:YAG laser, the wavelength of which is permeable for diamond, is focused on the surface of a diamond sample, a layer of surface material is ablated. Therefore, diamond can be cut by repetitive irradiation. In this study, the processing mechanism of ablation for a single crystal diamond was examined using a heat conduction analysis, considering laser absorption at the surface or the temperature dependence of absorption coefficient. When the laser beam is absorbed at the surface layer, the surface layer is ablated during an early period in the laser pulse. Once the absorption surface layer is ablated, the laser beam penetrates the base material and ablation stops. On the other hand, if the authors assume that single crystal diamond has the temperature dependence of absorption coefficient which is about equal to that of CVD (chemical vapor deposition) diamond, the temperature rise is not enough to ablate the material. However, it became clear that the diamond is ablated deeply when the authors consider both absorption at the surface layer and the temperature dependence of the absorption coefficient. It can be considered that the surface is transformed to graphite and becomes the absorption layer during the repetitive irradiation. It is estimated that the phase change to graphite is very small and its volume fraction is a few percent at most. 展开更多
关键词 laser ablation laser cutting single crystal diamond absorption layer absorption coefficient heat conduction analysis
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Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体的光谱分析及中红外发射增强
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作者 乐旭星 王燕 +2 位作者 朱昭捷 李坚富 涂朝阳 《发光学报》 EI CAS CSCD 北大核心 2024年第6期905-912,共8页
采用非化学计量配比的提拉法成功生长出Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体、Er^(3+)/Yb^(3+):SrLaGaO_(4)和Er^(3+):SrLaGaO_(4)晶体并进行了详细的光谱分析,同时对纯的SrLaGaO_(4)晶体进行了热学性能分析。与Er^(3+):SrLaGaO_(4... 采用非化学计量配比的提拉法成功生长出Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体、Er^(3+)/Yb^(3+):SrLaGaO_(4)和Er^(3+):SrLaGaO_(4)晶体并进行了详细的光谱分析,同时对纯的SrLaGaO_(4)晶体进行了热学性能分析。与Er^(3+):SrLaGaO_(4)晶体相比,Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体不仅展示了更好的吸收特性,而且还表现出较弱的近红外发射,以及优异的中红外发射;Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体中2.7μm铒激光下能级4I13/2的荧光寿命显著减少,而上能级4I11/2的寿命略微下降,成功抑制了自终止效应。此外,本工作还研究了Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体中Yb^(3+)的敏化作用和Pr^(3+)离子的去激活作用以及能量传递机制。总之,引入Yb^(3+)和Pr^(3+)有利于在Er^(3+)/Yb^(3+)/Pr^(3+):SrLaGaO_(4)晶体中实现增强的2.7μm发射,这使其成为中红外激光有前途的候选材料。 展开更多
关键词 SrLaGaO_(4)晶体 Er^(3+)掺杂 晶体生长 中红外激光晶体 光谱分析
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KrF准分子激光烧蚀氧化镁单晶的实验研究
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作者 范永昌 戴尔.,PE 《激光技术》 CAS CSCD 1995年第5期283-285,共3页
本文采用光谱学和离子探针等检测手段,对KrF准分子激光烧蚀氧化镁单晶的物理过程进行了实验研究。结果表明,激光烧蚀等离子体内的主要粒子形态是镁原子和一价的镁离子,其粒子的动能在30~45eV范围。从烧蚀部位的扫描电镜形... 本文采用光谱学和离子探针等检测手段,对KrF准分子激光烧蚀氧化镁单晶的物理过程进行了实验研究。结果表明,激光烧蚀等离子体内的主要粒子形态是镁原子和一价的镁离子,其粒子的动能在30~45eV范围。从烧蚀部位的扫描电镜形貌分析表明,在激光能量密度近于烧蚀阈值时,激光辐照的氧化镁单晶表面呈现出一定程度的层离特征。 展开更多
关键词 激光烧蚀 氧化镁单晶 光谱测量 KRF准分子激光
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